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Wetting of chemically heterogeneous striped surfaces: Molecular dynamics simulations

机译:化学异质条纹表面的润湿:分子动力学模拟

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Using molecular dynamics simulations, we thoroughly investigated the wetting behaviors of a chemically heterogeneous striped substrate patterned with two different wetting materials, face-centered cubic gold and face-centered cubic silver. We analyzed the density distributions, normal stress distributions, surface tensions, and contact angles of a water droplet placed on the substrates at different heterogeneities. We found that the density and stress profile of the water droplet near the substrate-water interface were noticeably affected by altering the gold and silver contents in the substrate. Specifically, a greater portion of gold (more wetting) or smaller portion of silver (less wetting) in the substrate composition induced higher densities and higher normal stresses in the vicinity of the substrate surface. Also, it was observed that the surface tensions at liquid-vapor interface and solid-vapor interface were not largely impacted by the change of the substrate composition while the solid-liquid surface tension decreased exponentially with increasing fraction of gold. Most importantly, we found that contact angle of a nanometer-sized water droplet resting on the chemically heterogeneous striped substrate does not show linear dependence on corresponding surface fractions like that predicted by Cassie-Baxter model at the macro-scale. Consequently, we proposed a method for successfully predicting the contact angle by including the critical effects of the substrate heterogeneity on both surface tensions and line tension at the three-phase contact line of the water droplet and the chemically striped substrate.
机译:利用分子动力学模拟,我们彻底研究了用两种不同的润湿材料图案化的化学异质条纹基板的润湿行为,面向中心的立方金和面向中心的立方银。我们分析了在不同异质性上放置在基板上的水滴的密度分布,正常应力分布,表面张力和接触角。我们发现,通过在基材中改变金和银含量,基板水界面附近的水滴的密度和应力分布显着影响。具体地,在基板组合物中诱导衬底表面的较高密度和较高的正常应力,特别是衬底表面的较高密度和较高的正常应力的大部分金(更湿度)或更小的金属(更小的润湿)。而且,观察到液 - 蒸汽界面和固体蒸汽界面处的表面张力在很大程度上不会受到基材组成的变化的影响,而固体液体表面张力随着金的逐渐增加而导致的。最重要的是,我们发现搁置在化学异质条纹衬底上的纳米水滴的接触角不显示在宏观级的Cassie-Baxter模型预测的相应表面级分的线性依赖性。因此,我们提出了一种通过包括在水滴和化学条纹基板的三相接触线上的表面张力和线张力上的基材异质性的临界效应来成功预测接触角的方法。

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